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The effect of mulching films on the temporal and spatial distribution of soil water in semiarid hilly area

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
To explore the patterns of the movement of soil moisture under film mulch throughout the year, white and black film covers were used in the hills and bare land was used as a control. The EM50 data collector is used to monitor the soil moisture in the 2 m soil layer in real time, and the CNC100 neutron moisture metre is used to observe the soil moisture in the 10 m soil layer for two years. The changes in soil moisture under different plastic films and the impacts of different types of plastic films on local water retention were studied in this article. The results showed that the soil moisture content was minimal in the 5-cm soil layer on any given day and that the white film led to greater soil moisture content than the other treatments within a depth of 1 m with a higher outcome. The soil water content at a depth of 10 m in the white film treatment was significantly higher than that in the other two treatments from October 2017 to May 2019. Film mulching not only increased the soil water content but also increased the water storage and moisture conservation in areas planted with jujube. Compared with bare land, film mulching can increase the depth of soil infiltration and help the recovery of the dry soil layer. White film mulching leads to the best recovery effect, and the rain storage efficiency and degree of soil moisture restoration are both the highest under the white film treatment.
Czasopismo
Rocznik
Strony
1439--1447
Opis fizyczny
Bibliogr. 28 poz., rys., tab.
Twórcy
autor
  • Institute of Building Intelligence, Jiangsu Vocational Institute of Architectural Technology, Xuzhou 221116, Jiangsu, China
autor
  • Institute of Soil and Water Conservation, Northwest A&F University, Yangling 712100, Shaanxi, China
autor
  • Institute of Building Intelligence, Jiangsu Vocational Institute of Architectural Technology, Xuzhou 221116, Jiangsu, China
Bibliografia
  • 1. Bai SY, Wang YK, Ma JP et al (2016) Experimental study on rainfall infiltration in semiarid region of the hilly area. Agric Res Arid Areas 34(2):218–231
  • 2. Bi JY, Wang XF, Zhu DL (2008) Effect of plastic-film mulch on crop yield. Transact CSAE 24(11):172–175
  • 3. Cao Y, Li J, Zhang SH et al (2012) Characteristics of deep soil desiccation of apple orchards in different weather and landform zones on the hilly area in China. Transact Chin Soc Agric Eng 28(15):72–79
  • 4. Chen L, Yang XG, Zhai DP et al (2015) Effects of mulching with caragana powder and plastic film on soil water and maize yield. Transact Chin Soc Agric Eng 31(2):108–116
  • 5. Ding W, Wang F, Dong Y, Jin K, Cong C, Han J, Ge W (2021a) Effects of rainwater harvesting system on soil moisture in rainfed orchards on the Chinese Loess Plateau. Agric Water Manag 243:106496
  • 6. Ding Y, Gong X, Xing Z, Cai H, Zhou Z, Zhang D, Shi H (2021b) Attribution of meteorological, hydrological and agricultural drought propagation in different climatic regions of China. Agric Water Manag 255:106996
  • 7. Hadrian F, Gerardo B, Howard C (2006) “Mulch effects on rainfall interception, soil physical characteristics and temperature under Zea mays L”. Soil Tillage Res 91(12):227–235
  • 8. He XW, Liu GQ, Guo MH (2008) On water resources environment for vegetation planning in the hilly area. Shuili Xuebao 39(7):843–847
  • 9. Jin SS, Wang X, Wang YK et al (2016) Effects of typical mulching patterns on soil water loss in jujube land during domancy period. Transact Chin Soc Agric Eng 32(14):153–160
  • 10. Li XY, Peng ZY, Shi HB et al (2015) “Effects of different degradable films mulching on soil water potential, temperature and sunflower growth.” Transact Chin Soc Agric Mach 46(2):97–103
  • 11. Liu XL, Wang YK, Ma LH et al (2013) Relationship between deep soil water vertical variation and root distribution in dense jujube plantation. Transact Chin Soc Agric Mach 44(7):90–96
  • 12. Liu N, Zhang JX, Jin S, S et al (2019) Characteristics of water consumption of jujube forests with limited growth. Agric Res Arid Areas 37(4):10–15
  • 13. Ma J, Lei J, Li FY et al (2016) Effects of covering methods on soil water, temperature and nitrogen of jujube orchard under drip irrigation. Agric Res Arid Areas 34(1):147–153
  • 14. Ma J, Wang X, Zhao X, Tian L, Wang Y (2021) Experimental study of mulching effects on water restoration of deep, desiccated soil in a loess hilly region. Environ Technol. https://doi.org/10.1080/09593330.2021.1922941
  • 15. Moreno MM, Moreno A (2008) Effect of different biodegradable and polyethylene mulches on soil properties and production in a tomato crop. Sci Hortic 116:256–263
  • 16. Qiu Y, Fu B, Wang J et al (2001) Spatial variability of soil moisture content and its relation to environmental indices in a semiarid gully catchment of the hilly area, China. J Arid Environ 49(4):723–750
  • 17. Skierucha W, Wilczek A, Alokhina O (2008) Calibration of a TDR probe for low soil water content measurements. Sens Actuators Phys 147(2):544–552
  • 18. Tian L, Zhang JX, Gao JE et al (2019) Experiment on dry soil water restoration in deep layer. Transac Chin Soc Agric Mach 50(4):255–262
  • 19. Wang YQ, Shao MA, Zhu YJ et al (2011) Impacts of land use and plant characteristics on dried soil layers in different climatic regions on the hilly area of China. Agric Meteorol 151:437–448
  • 20. Wei XD, Wang X, Wang YK et al (2015) Root distribution and soil water dynamics of jujube plantations in loess hilly regions. Transac Chin Soc Agric Mach 46(4):88–97
  • 21. Xu SN, Wu JM, Huang X et al (2014) Effects of different plastic films mulching on soil temperature and moisture, and growth and yield of sugarcane. J South Agric 45(12):2137–2142
  • 22. Xu J, Guo Z, Li Z, Li F, Xue X, Wu X, Han Q (2021) Stable oxygen isotope analysis of the water uptake mechanism via the roots in spring maize under the ridge–furrow rainwater harvesting system in a semi-arid region. Agric Water Manag 252:106879
  • 23. Yang T, Gong H, Li X et al (2010) Progress of soil moisture monitoring by remote sensing. Acta Ecol Sin 30(22):6264–6277
  • 24. Yang L, Wei W, Mo B et al (2011) Soil water deficit under different artificial vegetation restoration in the semi-arid hilly region of the hilly area. Acta Ecol Sin 31(11):3060–3068
  • 25. Yin T, He WQ, Yan CR et al (2014) Effects of plastic mulching on surface of no-till straw mulching on soil water and temperature. Transac Chin Soc Agric Eng 30(19):78–87
  • 26. Yun XF, Wu PT, Wang YK (2006) Study on the effect of irrigation under plastic preservation of soil moisture on soil and crop. J Irrig Drain 25(1):25–29
  • 27. Zhai S, Liang YL, Wang JY (2005) Effects of soil surface mulching on cucumber production and water use efficiency in solar greenhouse. Transact CSAE 21(10):129–133
  • 28. Zhang J, Ren XL, Luo SF et al (2010) Influences of different covering materials mulching on soil moisture and corn yield. Transact CSAE 26(6):14–19
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fd3dc24b-6544-427e-a71b-50f096b0f9c4
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